Application of fuzzy random-based multi-objective linear fractional programming to inventory management problem

IF 3.2 Q2 AUTOMATION & CONTROL SYSTEMS Systems Science & Control Engineering Pub Date : 2022-02-28 DOI:10.1080/21642583.2022.2040060
Hamiden Abd El-Wahed Khalifa, Pavan Kumar, S. Alodhaibi
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引用次数: 4

Abstract

This research article aims to study a multi-objective linear fractional programming (FMOLFP) problem having fuzzy random coefficients as well as fuzzy pseudorandom decision variables. Initially, the FMOLFP model is converted to a single objective fuzzy linear programming (FLP) model. Secondly, we show that a fuzzy random optimal solution of an FLP problem is resolved into a class of random optimal solution of relative pseudorandom linear programming (LP) model. As a result, some of theorems show that a fuzzy random optimal solution of a fuzzy pseudorandom LP problem is combined with a series of random optimal solutions of relative pseudorandom LP problems. As an application, the developed approach is implemented to an inventory management problem by taking the parameters as trapezoidal fuzzy numbers, ultimately resulting in a new initiative for modelling real-world problems for optimization. In the last, some numerical examples are introduced to clarify the obtained results and their applicability.
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基于模糊随机的多目标线性分式规划在库存管理问题中的应用
本文旨在研究一个具有模糊随机系数和模糊伪随机决策变量的多目标线性分式规划问题。最初,FMOLFP模型被转换为单目标模糊线性规划(FLP)模型。其次,我们证明了FLP问题的模糊随机最优解被分解为一类相对伪随机线性规划(LP)模型的随机最优解。结果表明,一个模糊伪随机LP问题的模糊随机最优解与一系列相对伪随机LP的随机最优解相结合。作为一个应用,所开发的方法通过将参数作为梯形模糊数来实现库存管理问题,最终产生了一个新的举措,用于对真实世界的问题进行建模以进行优化。最后,通过数值算例说明了所得结果及其适用性。
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来源期刊
Systems Science & Control Engineering
Systems Science & Control Engineering AUTOMATION & CONTROL SYSTEMS-
CiteScore
9.50
自引率
2.40%
发文量
70
审稿时长
29 weeks
期刊介绍: Systems Science & Control Engineering is a world-leading fully open access journal covering all areas of theoretical and applied systems science and control engineering. The journal encourages the submission of original articles, reviews and short communications in areas including, but not limited to: · artificial intelligence · complex systems · complex networks · control theory · control applications · cybernetics · dynamical systems theory · operations research · systems biology · systems dynamics · systems ecology · systems engineering · systems psychology · systems theory
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